A model for the electric field-driven flow and deformation of a drop or vesicle in strong electrolyte solutions
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Publication:5084109
DOI10.1017/jfm.2022.469zbMath1498.76106arXiv2110.08416OpenAlexW4283165610MaRDI QIDQ5084109
Manman Ma, Michael Siegel, Michael R. Booty
Publication date: 23 June 2022
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/2110.08416
Stokes and related (Oseen, etc.) flows (76D07) Magnetohydrodynamics and electrohydrodynamics (76W05) Liquid-liquid two component flows (76T06)
Cites Work
- A model of electrodiffusion and osmotic water flow and its energetic structure
- A hybrid numerical method for interfacial fluid flow with soluble surfactant
- Linear integral equations.
- Electrokinetics at liquid/liquid interfaces
- Shear-driven circulation patterns in lipid membrane vesicles
- The Taylor–Melcher leaky dielectric model as a macroscale electrokinetic description
- A numerical study of the deformation and burst of a viscous drop in an extensional flow
- Boundary Integral and Singularity Methods for Linearized Viscous Flow
- Colloidal Dispersions
- An electrokinetic model of drop deformation in an electric field
- Induced-charge electro-osmosis
- From electrodiffusion theory to the electrohydrodynamics of leaky dielectrics through the weak electrolyte limit
- Electrohydrodynamics of Drops and Vesicles
- Unnamed Item
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